ACCURATE AND PRECISE ISOTOPIC MEASUREMENT OF SUB-NANOGRAM SIZED SAMPLES OF FORAMINIFERAL HOSTED BORON BY TOTAL EVAPORATION NTIMS

Show simple item record

dc.contributor.author Foster G.L.
dc.contributor.author Ni Y.
dc.contributor.author Haley B.
dc.contributor.author Elliott T.
dc.date.accessioned 2024-11-17T03:29:53Z
dc.date.available 2024-11-17T03:29:53Z
dc.date.issued 2006
dc.identifier https://www.elibrary.ru/item.asp?id=14096566
dc.identifier.citation Chemical Geology, 2006, 230, 1-2, 161-174
dc.identifier.uri https://repository.geologyscience.ru/handle/123456789/46476
dc.description.abstract We report a total evaporation negative ion thermal mass spectrometry (TE-NTIMS) technique that enables precise and accurate (± 0.7‰; 2 s.d.) measurements of boron isotope ratios. The fundamental advantage of TE-NTIMS is that the effect of instrumental mass fractionation is minimised and sample signal maximised by analysing samples to exhaustion. We can analyse as little as 300 pg of B, which enables repeat analyses of dissolutions of small numbers of foraminifera (as little as 0.1 mg or ∼10 individual foraminfera). This represents a several fold reduction in the number of tests required compared to previous NTIMS studies and brings the amount of sample into line with other commonly used paleo-proxies. Standard addition experiments indicate that the 11B / 10B ratio of the NIST SRM 951 standard is not biased by differing amounts of seawater or carbonate matrix and yield an 11B / 10B within error of the certified value. We also show that our sample preparation induces no additional variations (e.g. blank contribution) beyond our analytical uncertainty. We obtain 11B / 10B ratios for seawater within error of values obtained using plasma ionisation, positive and negative thermal ionisation mass-spectrometry. Our measurements of core-top G. sacculifer from three ocean basins yield δ11B within analytical error (23.3–24.3‰) and fall within the range of published values. This study, however, further highlights significant interlaboratory biases in isotopic compositions of core-top foraminifera. Significantly, we show that our approach is not influenced by processing blank nor systematic differences in mass bias between measurements of sample and standard, which has yet to be documented for some other laboratories.
dc.subject Boron isotopes
dc.subject Total evaporation
dc.subject NTIMS
dc.subject Foraminifera
dc.subject Paleo-ocean pH
dc.title ACCURATE AND PRECISE ISOTOPIC MEASUREMENT OF SUB-NANOGRAM SIZED SAMPLES OF FORAMINIFERAL HOSTED BORON BY TOTAL EVAPORATION NTIMS
dc.type Статья


Files in this item

This item appears in the following Collection(s)

  • ELibrary
    Метаданные публикаций с сайта https://www.elibrary.ru

Show simple item record